A Hybrid Coordinated Design Method for Power System Stabilizer and FACTS Device Based on Synchrosqueezed Wavelet Transform and Stochastic Subspace Identification
The occurrence of low-frequency electromechanical oscillations is a major problem in the effective operation of power systems. The scrutiny of these oscillations provides substantial information about power system stability and security. In this paper, a new method is introduced based on a combinati...
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doaj-5d17d23bd2e746c29bb11c985519a6282021-07-30T23:01:10ZengIEEEJournal of Modern Power Systems and Clean Energy2196-54202021-01-019491091810.35833/MPCE.2019.0004969210429A Hybrid Coordinated Design Method for Power System Stabilizer and FACTS Device Based on Synchrosqueezed Wavelet Transform and Stochastic Subspace IdentificationAyda Faraji0Ali Hesami Naghshbandy1Arman Ghaderi Baayeh2Faculty of Engineering, University of Kurdistan,Department of Electrical Engineering,Sanandaj,Kurdistan,IranFaculty of Engineering, University of Kurdistan,Department of Electrical Engineering,Sanandaj,Kurdistan,IranFaculty of Engineering, University of Kurdistan,Department of Electrical Engineering,Sanandaj,Kurdistan,IranThe occurrence of low-frequency electromechanical oscillations is a major problem in the effective operation of power systems. The scrutiny of these oscillations provides substantial information about power system stability and security. In this paper, a new method is introduced based on a combination of synchrosqueezed wavelet transform and the stochastic subspace identification (SSI) algorithm to investigate the low-frequency electromechanical oscillations of large-scale power systems. Then, the estimated modes of the power system are used for the design of the power system stabilizer and the flexible alternating current transmission system (FACTS) device. In this optimization problem, the control parameters are set using a hybrid approach composed of the Prony and residual methods and the modified fruit fly optimization algorithm. The proposed mode estimation method and the controller design are simulated in MATLAB using two test case systems, namely IEEE 2-ar-ea 4-generator and New England-New York 68-bus 16-genera-tor systems. The simulation results demonstrate the high performance of the proposed method in estimation of local and interarea modes, and indicate the improvements in oscillation damping and power system stability.https://ieeexplore.ieee.org/document/9210429/Low-frequency oscillationmodified fruit fly optimization algorithmProny analysisstochastic subspace identification (SSI) algorithmsynchrosqueezed wavelet transform (SSWT) |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ayda Faraji Ali Hesami Naghshbandy Arman Ghaderi Baayeh |
spellingShingle |
Ayda Faraji Ali Hesami Naghshbandy Arman Ghaderi Baayeh A Hybrid Coordinated Design Method for Power System Stabilizer and FACTS Device Based on Synchrosqueezed Wavelet Transform and Stochastic Subspace Identification Journal of Modern Power Systems and Clean Energy Low-frequency oscillation modified fruit fly optimization algorithm Prony analysis stochastic subspace identification (SSI) algorithm synchrosqueezed wavelet transform (SSWT) |
author_facet |
Ayda Faraji Ali Hesami Naghshbandy Arman Ghaderi Baayeh |
author_sort |
Ayda Faraji |
title |
A Hybrid Coordinated Design Method for Power System Stabilizer and FACTS Device Based on Synchrosqueezed Wavelet Transform and Stochastic Subspace Identification |
title_short |
A Hybrid Coordinated Design Method for Power System Stabilizer and FACTS Device Based on Synchrosqueezed Wavelet Transform and Stochastic Subspace Identification |
title_full |
A Hybrid Coordinated Design Method for Power System Stabilizer and FACTS Device Based on Synchrosqueezed Wavelet Transform and Stochastic Subspace Identification |
title_fullStr |
A Hybrid Coordinated Design Method for Power System Stabilizer and FACTS Device Based on Synchrosqueezed Wavelet Transform and Stochastic Subspace Identification |
title_full_unstemmed |
A Hybrid Coordinated Design Method for Power System Stabilizer and FACTS Device Based on Synchrosqueezed Wavelet Transform and Stochastic Subspace Identification |
title_sort |
hybrid coordinated design method for power system stabilizer and facts device based on synchrosqueezed wavelet transform and stochastic subspace identification |
publisher |
IEEE |
series |
Journal of Modern Power Systems and Clean Energy |
issn |
2196-5420 |
publishDate |
2021-01-01 |
description |
The occurrence of low-frequency electromechanical oscillations is a major problem in the effective operation of power systems. The scrutiny of these oscillations provides substantial information about power system stability and security. In this paper, a new method is introduced based on a combination of synchrosqueezed wavelet transform and the stochastic subspace identification (SSI) algorithm to investigate the low-frequency electromechanical oscillations of large-scale power systems. Then, the estimated modes of the power system are used for the design of the power system stabilizer and the flexible alternating current transmission system (FACTS) device. In this optimization problem, the control parameters are set using a hybrid approach composed of the Prony and residual methods and the modified fruit fly optimization algorithm. The proposed mode estimation method and the controller design are simulated in MATLAB using two test case systems, namely IEEE 2-ar-ea 4-generator and New England-New York 68-bus 16-genera-tor systems. The simulation results demonstrate the high performance of the proposed method in estimation of local and interarea modes, and indicate the improvements in oscillation damping and power system stability. |
topic |
Low-frequency oscillation modified fruit fly optimization algorithm Prony analysis stochastic subspace identification (SSI) algorithm synchrosqueezed wavelet transform (SSWT) |
url |
https://ieeexplore.ieee.org/document/9210429/ |
work_keys_str_mv |
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